Joseph Ching
Joseph Ching
Assistant Professor, The Education University of Hong Kong
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Urban pollution greatly enhances formation of natural aerosols over the Amazon rainforest
M Shrivastava, MO Andreae, P Artaxo, HMJ Barbosa, LK Berg, J Brito, ...
Nature communications 10 (1), 1046, 2019
Rethinking air quality and climate change after COVID-19
J Ching, M Kajino
International Journal of Environmental Research and Public Health 17 (14), 5167, 2020
Aerosol mixing state matters for particles deposition in human respiratory system
J Ching, M Kajino
Scientific Reports 8, 8864, 2018
NHM-Chem, the Japan Meteorological Agency's regional meteorology–chemistry model: model evaluations toward the consistent predictions of the chemical, physical, and optical …
M Kajino, M Deushi, TT Sekiyama, N Oshima, K Yumimoto, TY Tanaka, ...
Journal of the Meteorological Society of Japan. Ser. II 97 (2), 337-374, 2019
Impacts of black carbon mixing state on black carbon nucleation scavenging-Insights from a particle-resolved model
J Ching, N Riemer, M West
Journal of Geophysical Research 117 (D23), 2012
Metrics to quantify the importance of mixing state for CCN activity
J Ching, J Fast, M West, N Riemer
Atmospheric Chemistry Physics 17, 7445-7458, 2017
A three‐dimensional sectional representation of aerosol mixing state for simulating optical properties and cloud condensation nuclei
J Ching, RA Zaveri, RC Easter, N Riemer, JD Fast
Journal of Geophysical Research: Atmospheres 121 (10), 5912–5929, 2016
Aerosol mixing state revealed by transmission electron microscopy pertaining to cloud formation and human airway deposition
J Ching, K Adachi, Y Zaizen, Y Igarashi, M Kajino
npj Climate and Atmospheric Science 2 (1), 22, 2019
Black carbon mixing state impacts on cloud microphysical properties: Effects of aerosol plume and environmental conditions
J Ching, N Riemer, M West
Journal of Geophysical Research: Atmospheres 121 (10), 5990-6013, 2016
Quantifying Impacts of Aerosol Mixing State on Nucleation-Scavenging of Black Carbon Aerosol Particles
J Ching, M West, N Riemer
Atmosphere 9, 17, 2018
Quantifying the effects of mixing state on aerosol optical properties
Y Yao, J Curtis, J Ching, Z Zheng, N Riemer
Atmospheric Chemistry and Physics Discussions 2022, 1-24, 2022
Comparison of three aerosol representations of NHM-Chem (v1. 0) for the simulations of air quality and climate-relevant variables
M Kajino, M Deushi, TT Sekiyama, N Oshima, K Yumimoto, TY Tanaka, ...
Geoscientific Model Development 14 (4), 2235-2264, 2021
NHM-Chem, the Japan MeteorologicalAgency's regional meteorology–chemistry model (v1. 0): model description and aerosol representations
M Kajino, M Deushi, TT Sekiyama, N Oshima, K Yumimoto, TY Tanaka, ...
Geoscientific Model Development Discussions 2018, 1-45, 2018
Resolving aerosol mixing state increases accuracy of black carbon respiratory deposition estimates
J Ching, M Kajino, H Matsui
One Earth 3 (6), 763-776, 2020
In‐cloud turbulence structure of marine stratocumulus
J Ching, N Riemer, M Dunn, M Miller
Geophysical research letters 37 (21), 2010
Unsupervised Regionalization of Particle-resolved Aerosol Mixing State Indices on the Global Scale
NR Zhonghua Zheng, Joseph Ching, Jeffrey H Curtis, Yu Yao, Peng Xu, Matthew West
NeurIPS 2020, AI for Earth Sciences Workshop, 2020
Unraveling aerosol mixing state: Enhancing climate impact predictions through particle-resolved simulations
NS Riemer, JH Curtis, Y Yao, L Fierce, TC Bond, J Ching, Z Zheng, F Xu, ...
AGU23, 2023
What is the aerosol state in the ambient atmosphere? Or: Multiscale modeling to tackle structural uncertainty in aerosol models
N Riemer, J Curtis, J Ching, Y Yao, Z Zheng, M West
EGU General Assembly Conference Abstracts, EGU-10839, 2023
Bridging Scales for Simulating Aerosol-Cloud-Climate Interactions Using Particle-Resolved models
N Riemer, JH Curtis, J Ching, Y Yao, Z Zheng, M West
103rd AMS Annual Meeting, 2023
What does it take to predict climate-relevant aerosol properties?
NS Riemer, JH Curtis, J Ching, Y Yao, M West, Z Zheng
AGU Fall Meeting Abstracts 2022, A42C-01, 2022
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